WO2011035692A1 - 空调器恒温除湿控制方法 - Google Patents
空调器恒温除湿控制方法 Download PDFInfo
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- WO2011035692A1 WO2011035692A1 PCT/CN2010/076871 CN2010076871W WO2011035692A1 WO 2011035692 A1 WO2011035692 A1 WO 2011035692A1 CN 2010076871 W CN2010076871 W CN 2010076871W WO 2011035692 A1 WO2011035692 A1 WO 2011035692A1
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- air conditioner
- turned
- electric heating
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- compressor
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F3/00—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
- F24F3/12—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
- F24F3/14—Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F2221/00—Details or features not otherwise provided for
- F24F2221/34—Heater, e.g. gas burner, electric air heater
Definitions
- the invention belongs to the field of air conditioning technology control, and particularly relates to a constant temperature dehumidification control method for an air conditioner.
- the air conditioning system generally performs the cooling operation. In order to avoid the room temperature drop too much while dehumidifying, it is generally ensured that the room temperature does not fall too much by controlling the opening or stopping of the compressor interval. fast.
- air conditioner manufacturers that add special throttling components to the refrigeration system or use special system construction methods to ensure that the air conditioner does not degrade too much indoor temperature.
- the two methods currently in common use have their own shortcomings. The first type, although the compressor uses intermittent work to dehumidify, but in the Spring Festival, where the temperature is not very high, it still gives people a cold feeling, resulting in Uncomfortable feeling.
- the second method can achieve dehumidification while avoiding too much temperature drop, but it needs to add some auxiliary components to the system, which greatly increases the product cost. Therefore, it is necessary to invent a constant temperature dehumidification air conditioner product which can effectively achieve constant temperature dehumidification without increasing product cost.
- the object of the present invention is to provide a constant temperature dehumidification control method for an air conditioner.
- the air conditioner performs cooling and dehumidification, the auxiliary electric heating is turned on or off according to the change of the ambient temperature, and the indoor environment temperature is effectively controlled while dehumidifying.
- the level of the environment reduces the ambient humidity and ensures that the room temperature is in a stable state, giving the user a comfortable feeling.
- step S1 the air conditioner enters the cooling operation mode, to step S2;
- step S2 After the air conditioner starts the cooling operation or runs for a period of time t l or after satisfying certain conditions, the auxiliary electric heating is turned on, to step S 3;
- the auxiliary electric heating is continuously operated after being turned on, and the air conditioner compressor is continuously turned on until the air conditioner is turned off.
- the auxiliary electric heating is continuously operated after being turned on, and the air conditioner compressor is switched at a predetermined time interval t3 until the air conditioner is turned off.
- the switch is performed at a predetermined time interval t2, and the air conditioner compressor is switched at a predetermined time interval t3 until the air conditioner is turned off.
- the switch After the auxiliary electric heating is turned on, the switch is performed at a predetermined time interval t2, and the air conditioner compressor is continuously turned on until the air conditioner is turned off.
- the steps of judging whether the compressor, the auxiliary electric heating is automatically turned on or automatically turned off are as follows:
- step S13 the compressor stops running, the auxiliary electric heating continues to be turned on, the running time t4, to step S12;
- step S14 the air conditioner maintains the cooling operation, the compressor continues to work, and the auxiliary electric heating continues to work, maintaining the state t4 time and then going to step S16;
- step S15 the air conditioner maintains the cooling operation, the compressor continues to work, the auxiliary electric heating stops working, and maintains the state t4 time and then proceeds to step S12;
- the air conditioner detects the indoor ambient temperature T indoor, and determines the relationship with 1 ⁇ , such as T ⁇ T ft - 1 , to step S17; such as 1 ⁇ -1 1 ⁇ 1 ⁇ +1 to step 314; Ft + T , to step S15;
- the air conditioner determines whether the indoor fan is running at the highest level, if it is to step S13, if not to step S18;
- step S18 the compressor keeps running, the indoor fan is turned up one step, the auxiliary electric heating continues to be turned on, and the running time t4 is followed by step S16;
- the 1 is 2 °C.
- the auxiliary electric heating is a PTC heating element.
- the constant temperature dehumidification control method for the air conditioner of the present invention when the air conditioner performs cooling and dehumidification, adjusts the opening or closing of the auxiliary electric heating according to the change of the ambient temperature, and effectively controls the indoor ambient temperature to be at a constant level while dehumidifying, thereby reducing The ambient humidity ensures that the room temperature is in a stable state, giving the user a comfortable feeling.
- FIG. 1 is a schematic flow chart of controlling a compressor and electrically heating opening and closing according to the present invention
- FIG. 2 is a schematic flow chart of another method for controlling a compressor and an electric heating automatic opening and closing method according to the present invention
- FIG. 3 is a schematic flow chart of another method for controlling a compressor and an electric heating automatic opening and closing method according to the present invention
- FIG. 4 is another control of the present invention
- FIG. 5 is a schematic flow chart of another method for controlling the compressor and the electric heating automatic opening and closing method according to the present invention
- FIG. 6 is another control compressor of the present invention, and the electric heating is automatically turned on and off.
- the invention discloses a constant temperature dehumidification control method for an air conditioner, as shown in FIG. 1, comprising step S1: the air conditioner enters a cooling operation mode, to step S2; step S2: after the air conditioner starts to perform a cooling operation or runs for a period of time t1 or After certain conditions are met, the auxiliary electric heating is turned on, to step S3; Step S3: the air conditioner compressor is switched according to a preset running logic, and the auxiliary electric heating is switched according to a preset operating logic or control command until The air conditioner is turned off. It is possible to turn on the auxiliary electric heating while the air conditioner is performing cooling and dehumidification, which can increase the outlet air temperature and prevent the indoor environment temperature from falling too fast, which causes an uncomfortable feeling.
- the compressor and the auxiliary electric heating can be operated in a continuous manner, that is, once the auxiliary electric heating is turned on, the air conditioner compressor and the auxiliary electric heating are continuously operated until the air conditioner is stopped; as shown in Fig. 3, After the auxiliary electric heating is turned on, the auxiliary electric heating can be continuously operated until the air conditioner is stopped, and the air conditioner compressor is switched at a predetermined time interval t 3 until the air conditioner is turned off; as shown in FIG. 4, after the auxiliary electric heating is turned on After the auxiliary electric heating is turned on, the switch is performed at a predetermined time interval t 2 , and the air conditioner compressor is switched at a predetermined time interval t 3 until the air conditioner is turned off; as shown in FIG. 5, after the auxiliary electric heating is turned on, After the auxiliary electric heating is turned on, the switch is performed at a predetermined time interval t 2 , and the air conditioner compressor is continuously turned on until the air conditioner is turned off.
- a method for realizing constant temperature dehumidification by automatically adjusting the compressor or auxiliary electric heating on or off by changing the indoor ambient temperature after the air conditioner enters the cooling operation mode is disclosed, which specifically includes The following steps:
- step S13 the compressor stops running, the auxiliary electric heating continues to be turned on, the running time t4, to step S12;
- step S14 the air conditioner maintains the cooling operation, the compressor continues to work, and the auxiliary electric heating continues to work, maintaining the state t4 time and then going to step S16;
- step S15 the air conditioner maintains the cooling operation, the compressor continues to work, the auxiliary electric heating stops working, and maintains the state t4 time and then proceeds to step S12;
- the air conditioner determines whether the indoor fan is running at the highest level, if it is to step S13, if not to step S18;
- step S18 the compressor keeps running, the indoor fan is turned up one step, the auxiliary electric heating continues to be turned on, and the running time t4 is followed by step S16;
- the 1 ⁇ is 2 °C.
- the auxiliary electric heating is a PTC heating element.
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- Combustion & Propulsion (AREA)
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- General Engineering & Computer Science (AREA)
- Air Conditioning Control Device (AREA)
Description
空调器恒温除湿控制方法
技术领域
本发明属于空调技术控制领域, 具体涉及一种空调器恒温除湿控制方法。
背景技术
众所周知, 现有空调器在进行除湿运行时, 空调系统一般是进行制冷运行, 为 了避免在除湿的同时使室温下降太多, 目前一般是通过控制压缩机间隔开启或停止 来确保室温不会下降太快。 也有一些空调厂家在制冷系统中加入特殊的节流部件或 采用特殊的系统构建方式来保证空调器在进行除湿的同时不会使得室内环境温度下 降太多。 但是目前普遍采用的这两种方式都有各自的缺陷, 第一种虽然压缩机采用 间歇工作的方式进行除湿, 但是在温度不是很高的春节, 仍然会给人带来比较冷的 感觉, 造成不舒适的感觉。 第二种方式虽然可以实现除湿的同时避免温度下降太多, 但是需要在系统中增加一些辅助部件, 极大程度地提高了产品成本。 因此需要发明 一种既能有效地实现恒温除湿, 又不会增加产品成本的恒温除湿空调产品。
发明内容
本发明的目的在于提供一种空调器恒温除湿控制方法, 在空调器进行制冷除湿 时, 根据环境温度的变化及时调整辅助电加热的开启或关闭, 在除湿的同时有效控 制室内环境温度处于一个恒定的水平, 既降低了环境湿度又保证室温处于一个平稳 状态, 给使用者一种舒适的感觉。
本发明是通过以下技术方案来实现的:
空调器恒温除湿控制方法, 其特征在于包括步骤:
S1 : 空调器进入制冷运行模式, 到步骤 S2 ;
S2 : 在空调器开始进行制冷运行或运行一段时间 t l后或满足一定条件后, 开启 辅助电加热, 到步骤 S 3;
S 3: 空调器压缩机按照预先设定的运行逻辑进行开关, 辅助电加热按照预先设 定的运行逻辑或控制指令进行开关, 直至空调器关机。
所述辅助电加热开启后连续运行, 空调器压缩机连续开启, 直至空调器关机。 所述辅助电加热开启后连续运行,空调器压缩机以预定的时间间隔 t 3进行开关, 直至空调器关机。
所述辅助电加热开启后以预定的时间间隔 t2进行开关, 空调器压缩机以预定的 时间间隔 t3进行开关, 直至空调器关机。
所述辅助电加热开启后以预定的时间间隔 t2进行开关,空调器压缩机连续开启, 直至空调器关机。
所述空调器进入制冷运行模式后, 所述压缩机、 辅助电加热自动开启或自动关 闭的判断步骤如下:
S11: 用户设定需要保持的恒定温度 T ft,
S12: 空调器检测室内环境温度 T s内,并判断 T s内与 T ¾的关系,如 T s内 < Τ Λ-Ίν 到步骤 S13; 如丁设- Τ Τ Tft+T 到步骤 S14; 如 T >Tft+T , 到步骤 S15;
S13: 压缩机停止运行, 辅助电加热继续开启, 运行时间 t4, 到步骤 S12;
S14: 空调器保持制冷运行, 压缩机继续工作, 辅助电加热继续工作, 保持这种 状态 t4时间后到步骤 S16;
S15: 空调器保持制冷运行, 压缩机继续工作, 辅助电加热停止工作, 保持这种 状态 t4时间后到步骤 S12;
S16: 空调器检测室内环境温度 T室内, 并判断 与 1^的关系, 如 Τ < Tft- 1 , 到步骤 S17; 如1^-1 1^ 1^+1到步骤314; 如 Τ >Tft+T , 到步骤 S15;
S17: 空调器判断室内风机是否在最高档运行, 如果是到步骤 S13, 如果否到步 骤 S18;
S18: 压缩机保持运行, 室内风机调高一档运行, 辅助电加热继续开启, 运行时 间 t4后到步骤 S16;
重复步骤 S12到 S18, 直至空调器停止运行。
所述 1 为 2°C。
所述辅助电加热为 PTC发热组件。
综上, 本发明的有益效果是:
本发明的空调器恒温除湿控制方法, 在空调器进行制冷除湿时, 根据环境温度 的变化及时调整辅助电加热的开启或关闭, 在除湿的同时有效控制室内环境温度处 于一个恒定的水平, 既降低了环境湿度又保证室温处于一个平稳状态, 给使用者一 种舒适的感觉。
附图说明
图 1是本发明控制压缩机、 电加热开启关闭的流程示意图;
图 2是本发明另一控制压缩机、 电加热自动开启关闭方法的流程示意图; 图 3是本发明另一控制压缩机、 电加热自动开启关闭方法的流程示意图; 图 4是本发明另一控制压缩机、 电加热自动开启关闭方法的流程示意图; 图 5是本发明另一控制压缩机、 电加热自动开启关闭方法的流程示意图; 图 6是本发明另一控制压缩机、 电加热自动开启关闭方法的流程示意图; 附图标记说明:
具体实施方式
为了更进一步阐述本发明为了达到发明目的所采用的技术手段及功效, 以下结 合附图及较佳实施例, 对依据本发明提出的空调器恒温除湿控制方法详细说明。
本发明公开一种空调器恒温除湿控制方法, 如图 1所示, 包括步骤 S1 : 空调器 进入制冷运行模式, 到步骤 S2 ; 步骤 S2 : 在空调器开始进行制冷运行或运行一段时 间 t l后或满足一定条件后, 开启辅助电加热, 到步骤 S 3; 步骤 S 3: 空调器压缩机 按照预先设定的运行逻辑进行开关, 辅助电加热按照预先设定的运行逻辑或控制指 令进行开关, 直至空调器关机。 可以在空调器进行制冷除湿的同时开启辅助电加热, 可以提高出风温度, 避免室内环境温度降低太快, 给人造成一种不舒适的感觉。 如 图 2所示, 其中压缩机和辅助电加热可以采用连续工作的方式, 也就是一旦辅助电 加热开启后, 空调压缩机和辅助电加热就连续工作直至空调器停机; 如图 3所示, 辅助电加热开启后, 也可以采用辅助电加热连续工作直至空调器停机, 而空调压缩 机采用以预定的时间间隔 t 3进行开关, 直至空调器关机; 如图 4所示, 辅助电加热 开启后, 辅助电加热开启后以预定的时间间隔 t 2进行开关, 空调器压缩机以预定的 时间间隔 t 3进行开关, 直至空调器关机; 如图 5所示, 也可以采用辅助电加热开启 后, 辅助电加热开启后以预定的时间间隔 t 2进行开关, 空调器压缩机连续开启,直 至空调器关机。
如图 6所示, 公开了一种当空调器进入制冷运行模式后, 通过室内环境温度的 变化自动调整压缩机、 辅助电加热的开启或关闭来实现恒温除湿的方法, 具体包括
以下步骤:
S11: 用户设定需要保持的恒定温度 T ft,
S12: 空调器检测室内环境温度 T s内,并判断 T s内与 T ¾的关系,如 T s内 < Τ Λ-Ίν 到步骤 S13; 如丁设- Τ Τ Tft+T 到步骤 S14; 如 T >Tft+T , 到步骤 S15;
S13: 压缩机停止运行, 辅助电加热继续开启, 运行时间 t4, 到步骤 S12;
S14: 空调器保持制冷运行, 压缩机继续工作, 辅助电加热继续工作, 保持这种 状态 t4时间后到步骤 S16;
S15: 空调器保持制冷运行, 压缩机继续工作, 辅助电加热停止工作, 保持这种 状态 t4时间后到步骤 S12;
S16: 空调器检测室内环境温度 T室内, 并判断 Τί 与 T¾的关系, 如 Τ < Tft- Τρ 到步骤 S17; 如1^-1 1^ 1^+1到步骤314; 如 Τ >Tft+T , 到步骤 S15;
S17: 空调器判断室内风机是否在最高档运行, 如果是到步骤 S13, 如果否到步 骤 S18;
S18: 压缩机保持运行, 室内风机调高一档运行, 辅助电加热继续开启, 运行时 间 t4后到步骤 S16;
重复步骤 S12到 S18, 直至空调器停止运行。
所述 1\为 2°C。
所述辅助电加热为 PTC发热组件。
以上所述, 仅是本发明的较佳实施例而已, 并非对本发明作任何限制, 虽然本 发明已以较佳实施例揭露如上, 然而并非用以限定本发明, 任何熟悉本专用的技术 人员, 在不脱离本发明技术方案范围内, 当可利用上述揭示的技术内容做出些许改 动或修饰为等同变化的等效实施例, 但是未脱离本发明技术方案的内容, 依据本发 明的技术实质对以上实施例所作的筒单修改、 等同变化与修饰, 均仍属于本发明技 术方案的范围内。
Claims
1、 空调器恒温除湿控制方法, 其特征在于包括步骤:
S1: 空调器进入制冷运行模式, 到步骤 S2;
S2: 在空调器开始进行制冷运行或运行一段时间 tl后或满足一定条件后, 开启 辅助电加热, 到步骤 S3;
S3: 空调器压缩机按照预先设定的运行逻辑进行开关, 辅助电加热按照预先设 定的运行逻辑或控制指令进行开关, 直至空调器关机。
2、 根据权利要求 1所述的空调器恒温除湿控制方法, 其特征在于, 辅助电加热 开启后连续运行, 空调器压缩机连续开启, 直至空调器关机。
3、 根据权利要求 1所述的空调器恒温除湿控制方法, 其特征在于, 辅助电加热 开启后连续运行, 空调器压缩机以预定的时间间隔 t3进行开关, 直至空调器关机。
4、 根据权利要求 1所述的空调器恒温除湿控制方法, 其特征在于, 辅助电加热 开启后以预定的时间间隔 t2进行开关, 空调器压缩机以预定的时间间隔 t3进行开 关, 直至空调器关机。
5、 根据权利要求 1所述的空调器恒温除湿控制方法, 其特征在于, 辅助电加热 开启后以预定的时间间隔 t2进行开关, 空调器压缩机连续开启, 直至空调器关机。
6、 根据权利要求 1所述的空调器恒温除湿控制方法, 其特征在于, 所述空调器 进入制冷运行模式后, 压缩机、 辅助电加热自动开启或自动关闭的判断步骤如下:
S11: 用户设定需要保持的恒定温度 T ft,
S12: 空调器检测室内环境温度 T s内,并判断 T s内与 T ¾的关系,如 T s内 < Τ Λ-Ίν 到步骤 S13; 如丁设- Τ Τ Tft+T 到步骤 S14; 如 T >Tft+T , 到步骤 S15;
S13: 压缩机停止运行, 辅助电加热继续开启, 运行时间 t4, 到步骤 S12;
S14: 空调器保持制冷运行, 压缩机继续工作, 辅助电加热继续工作, 保持这种 状态 t4时间后到步骤 S16;
S15: 空调器保持制冷运行, 压缩机继续工作, 辅助电加热停止工作, 保持这种 状态 t4时间后到步骤 S12;
S16: 空调器检测室内环境温度 T室内, 并判断 与 1^的关系, 如 Τ < Tft- 1 , 到步骤 S17; 如1^-1 1^ 1^+1到步骤314; 如 Τ >Tft+T , 到步骤 S15; S17: 空调器判断室内风机是否在最高档运行, 如果是到步骤 S13, 如果否到步 骤 S18;
S18: 压缩机保持运行, 室内风机调高一档运行, 辅助电加热继续开启, 运行时 间 t4后到步骤 S16;
重复步骤 S12到 S18, 直至空调器停止运行。
7、 根据权利要求 6所述的空调器恒温除湿控制方法, 其特征在于, 所述 1 为 2
°C。
8、 根据权利要求 1所述的空调器恒温除湿控制方法, 其特征在于, 所述辅助电 加热为 PTC发热组件。
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| CN200910192811.5 | 2009-09-25 | ||
| CN200910192811A CN102032643B (zh) | 2009-09-25 | 2009-09-25 | 空调器恒温除湿控制方法 |
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| CN104654514A (zh) * | 2013-11-19 | 2015-05-27 | 海尔集团公司 | 空调器定温除湿的控制方法 |
| CN108859653A (zh) * | 2018-04-03 | 2018-11-23 | 浙江吉利控股集团有限公司 | 一种电动汽车空调控制方法及系统 |
| CN111630326A (zh) * | 2018-01-23 | 2020-09-04 | 大金工业株式会社 | 空调装置 |
| CN113531667A (zh) * | 2021-06-21 | 2021-10-22 | 青岛海尔空调器有限总公司 | 用于空调除湿的方法、装置和智能空调 |
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| CN107036246B (zh) * | 2017-04-26 | 2019-10-01 | 广东美的暖通设备有限公司 | 空调器及其恒温除湿控制方法、装置 |
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| CN102032643A (zh) | 2011-04-27 |
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